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1.
Braz J Microbiol ; 51(3): 979-988, 2020 Sep.
Article in English | MEDLINE | ID: mdl-32424715

ABSTRACT

L-asparaginase has been used in the remission of malignant neoplasms such as acute lymphoblastic leukemia. The search for new sources of this enzyme has become attractive for therapeutics. Traditional methods for biomolecule purification involve several steps. A two-phase system may be a good strategy to anticipate one of these stages. This study aimed to produce and purify a fungal L-asparaginase through an aqueous two-phase micellar system (ATPMS) using Triton X-114. The fungus Penicillium sp.-encoded 2DSST1 was isolated from Cerrado soil. Plackett-Burman design followed by a 24 full factorial design was used to determine the best conditions to produce L-asparaginase. The evaluated variables were L-asparagine, L-proline, wheat bran, potato dextrose broth, ammonium sulfate, yeast extract, sucrose and glucose concentrations, incubation temperature, incubation period, and initial pH of the culture medium. L-asparaginase quantification was valued by the formation of ß-aspartyl hydroxamate. The significant positive variables, L-asparagine, L-proline, potato dextrose broth, and sucrose concentrations, were evaluated at 2 levels (+ 1 and - 1) with triplicate of the central point. After 34 runs, maximum activity (2.33 IU/mL) was achieved at the factorial design central point. A central composite design was performed in ATPMS at two levels (+ 1 and - 1) varying Triton X-114 concentration (w/v), separation phase temperature, and crude extract concentration (w/v). The L-asparaginase partition coefficient (K) was considered the experimental design response. Out of the 16 systems that were examined, the most promising presented a purification factor of 1.4 and a yield of 100%.


Subject(s)
Asparaginase/isolation & purification , Dietary Fiber/metabolism , Micelles , Penicillium/enzymology , Asparaginase/metabolism , Biodegradation, Environmental , Culture Media/chemistry , Culture Media/metabolism , Dietary Fiber/analysis , Fermentation , Liquid-Liquid Extraction , Octoxynol/analysis , Octoxynol/chemistry , Penicillium/growth & development , Penicillium/metabolism , Temperature
2.
Psychiatr Prax ; 44(2): 65-74, 2017 Mar.
Article in German | MEDLINE | ID: mdl-26979623

ABSTRACT

Objective To develop and test the psychometric properties of a measure of participation and social inclusion for individuals with a chronic mental disorder - the F-INK. Methods Within a cross-sectional design, mental health patients from different institutional settings (n = 106) and adults from the general population (n = 19) completed the questionnaire in an individual interview with a researcher. To estimate the reliability of two sum-scores on social inclusion and participation, Cronbach's α was computed. To appraise the validity, mean scale scores were compared across different study groups. Results For both scales, reliability was qualified as substantial (α > 0.70). Study groups showed expected differences in mean scores. Conclusion Preliminary findings suggest that the F-INK may be a useful tool for the assessment of social inclusion and social participation in individuals with a chronic mental disorder. However, further testing of the psychometric properties on a larger population is needed.


Subject(s)
Mental Disorders/psychology , Psychometrics/statistics & numerical data , Social Isolation , Social Participation , Surveys and Questionnaires , Adult , Chronic Disease , Cross-Sectional Studies , Female , Humans , Interview, Psychological , Male , Mental Disorders/diagnosis , Mental Disorders/rehabilitation , Middle Aged , Reference Values , Reproducibility of Results , Self Report
3.
Biotechnol Appl Biochem ; 62(6): 806-14, 2015.
Article in English | MEDLINE | ID: mdl-25546578

ABSTRACT

The partitioning of protease expressed by Penicillium fellutanum from the Brazilian savanna in a novel inexpensive and stable aqueous two-phase system (ATPS) composed of poly(ethylene glycol) (PEG) and sodium polyacrylate (NaPA) was studied in this work using factorial design. The ATPS is formed by mixing both polymers with a salt (NaCl) and fermented broth of P. fellutanum. The effects of molar mass (2,000, 4,000, and 6,000 g ⋅ mol(-1)) and concentration (6, 8, and 10 wt%) of PEG and that of NaPA concentration (6, 8, and 10 wt%) on protease partitioning (K) at 25 °C were studied. A two-level factorial design (2(3)) was implemented. The effect of Na2 SO4 concentration (5, 10, and 15 wt%) on the reextraction of the enzyme was also analyzed. The partition coefficient K ranged from 77.51 to 1.21, indicating the versatility of the method. The reextraction was achieved with the addition of 5% Na2 SO4 , allowing the partitioning of the protease to the upper phase, whereas total proteins were directed to the bottom phase. The results of partitioning using the PEG/NaPA/NaCl system and that of the subsequent reextraction with Na2 SO4 suggest that this method can be used to purify proteases from fermented broth of P. fellutanum.


Subject(s)
Acrylic Resins/chemistry , Chemical Fractionation/methods , Grassland , Penicillium/genetics , Peptide Hydrolases/isolation & purification , Polyethylene Glycols/chemistry , Sodium Chloride/chemistry , Gene Expression , Peptide Hydrolases/genetics , Water/chemistry
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